Mutryn Marie F, Brannick Erin M, Fu Weixuan, Lee William R, Abasht Behnam
Department of Animal and Food Sciences, University of Delaware, 531 South College Ave, Newark, DE, 19716, USA.
Maple Leaf Farms, Leesburg, IN, USA.
BMC Genomics. 2015 May 21;16(1):399. doi: 10.1186/s12864-015-1623-0.
Improvements in poultry production within the past 50 years have led to increased muscle yield and growth rate, which may be contributing to an increased rate and development of new muscle disorders in chickens. Previously reported muscle disorders and conditions are generally associated with poor meat quality traits and have a significant negative economic impact on the poultry industry. Recently, a novel myopathy phenotype has emerged which is characterized by palpably "hard" or tough breast muscle. The objective of this study is to identify the underlying biological mechanisms that contribute to this emerging muscle disorder colloquially referred to as "Wooden Breast", through the use of RNA-sequencing technology.
We constructed cDNA libraries from five affected and six unaffected breast muscle samples from a line of commercial broiler chickens. After paired-end sequencing of samples using the Illumina Hiseq platform, we used Tophat to align the resulting sequence reads to the chicken reference genome and then used Cufflinks to find significant changes in gene transcript expression between each group. By comparing our gene list to previously published histology findings on this disorder and using Ingenuity Pathways Analysis (IPA®), we aim to develop a characteristic gene expression profile for this novel disorder through analyzing genes, gene families, and predicted biological pathways.
Over 1500 genes were differentially expressed between affected and unaffected birds. There was an average of approximately 98 million reads per sample, across all samples. Results from the IPA analysis suggested "Diseases and Disorders" such as connective tissue disorders, "Molecular and Cellular Functions" such as cellular assembly and organization, cellular function and maintenance, and cellular movement, "Physiological System Development and Function" such as tissue development, and embryonic development, and "Top Canonical Pathways" such as, coagulation system, axonal guidance signaling, and acute phase response signaling, are associated with the Wooden Breast disease.
There is convincing evidence by RNA-seq analysis to support localized hypoxia, oxidative stress, increased intracellular calcium, as well as the possible presence of muscle fiber-type switching, as key features of Wooden Breast Disease, which are supported by reported microscopic lesions of the disease.
过去50年家禽生产的改善导致肌肉产量和生长速度增加,这可能促使鸡群中新发肌肉疾病的发病率上升及病情发展。先前报道的肌肉疾病通常与肉质不良性状相关,对家禽业造成重大负面经济影响。最近,一种新的肌病表型出现,其特征是胸肌明显“硬”或坚韧。本研究的目的是通过使用RNA测序技术,确定导致这种俗称“木胸”的新出现肌肉疾病的潜在生物学机制。
我们从一批商品肉鸡的5个患病和6个未患病胸肌样本构建了cDNA文库。使用Illumina Hiseq平台对样本进行双端测序后,我们使用Tophat将所得序列读数与鸡参考基因组比对,然后使用Cufflinks找出每组之间基因转录表达的显著变化。通过将我们的基因列表与先前发表的关于该疾病的组织学发现进行比较,并使用Ingenuity Pathways Analysis(IPA®),我们旨在通过分析基因、基因家族和预测的生物学途径,为这种新疾病建立特征性基因表达谱。
患病和未患病鸡之间有超过1500个基因差异表达。所有样本中每个样本平均约有9800万个读数。IPA分析结果表明,“疾病和病症”如结缔组织疾病、“分子和细胞功能”如细胞组装和组织、细胞功能和维持以及细胞运动、“生理系统发育和功能”如组织发育和胚胎发育,以及“顶级经典通路”如凝血系统、轴突导向信号传导和急性期反应信号传导,都与木胸病相关。
RNA测序分析有令人信服的证据支持局部缺氧、氧化应激、细胞内钙增加以及可能存在的肌纤维类型转换,作为木胸病的关键特征,这些特征得到了该疾病报告的微观病变的支持。